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枯草芽孢杆菌基因编码核糖核酸酶 Y 和 RNase J1 的敲除突变体是可行的,但在细胞形态、孢子形成和感受态方面存在主要缺陷。

Bacillus subtilis mutants with knockouts of the genes encoding ribonucleases RNase Y and RNase J1 are viable, with major defects in cell morphology, sporulation, and competence.

机构信息

CNRS UPR 9073, Université Paris Diderot, Sorbonne Paris Cité, Institut de Biologie Physico-Chimique, Paris, France.

出版信息

J Bacteriol. 2013 May;195(10):2340-8. doi: 10.1128/JB.00164-13. Epub 2013 Mar 15.

Abstract

The genes encoding the ribonucleases RNase J1 and RNase Y have long been considered essential for Bacillus subtilis cell viability, even before there was concrete knowledge of their function as two of the most important enzymes for RNA turnover in this organism. Here we show that this characterization is incorrect and that ΔrnjA and Δrny mutants are both viable. As expected, both strains grow relatively slowly, with doubling times in the hour range in rich medium. Knockout mutants have major defects in their sporulation and competence development programs. Both mutants are hypersensitive to a wide range of antibiotics and have dramatic alterations to their cell morphologies, suggestive of cell envelope defects. Indeed, RNase Y mutants are significantly smaller in diameter than wild-type strains and have a very disordered peptidoglycan layer. Strains lacking RNase J1 form long filaments in tight spirals, reminiscent of mutants of the actin-like proteins (Mre) involved in cell shape determination. Finally, we combined the rnjA and rny mutations with mutations in other components of the degradation machinery and show that many of these strains are also viable. The implications for the two known RNA degradation pathways of B. subtilis are discussed.

摘要

编码核糖核酸酶 J1 和 RNase Y 的基因长期以来被认为是枯草芽孢杆菌细胞存活所必需的,甚至在人们对它们作为该生物体中最重要的两种 RNA 周转酶的功能有具体了解之前就是如此。在这里,我们表明这种特征描述是不正确的,rnjAΔ 和 rnyΔ 突变体都是有活力的。正如预期的那样,这两种菌株的生长速度都相对较慢,在丰富的培养基中倍增时间在小时范围内。敲除突变体在其孢子形成和感受态发育程序中存在主要缺陷。两种突变体对广泛的抗生素都高度敏感,并且它们的细胞形态发生了明显的改变,提示细胞膜缺陷。事实上,RNase Y 突变体的直径明显小于野生型菌株,并且其肽聚糖层非常无序。缺乏 RNase J1 的菌株形成紧密螺旋的长丝,使人联想到参与细胞形状决定的肌动蛋白样蛋白(Mre)突变体。最后,我们将 rnjA 和 rny 突变与降解机制的其他成分的突变相结合,并表明这些菌株中的许多也是有活力的。讨论了枯草芽孢杆菌的两种已知 RNA 降解途径的意义。

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